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Focal photodynamic intracellular acidification as a cancer therapeutic

机译:局灶性光动力学细胞内酸化作为癌症治疗

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Cancer cells utilize an array of proton transporters to regulate intra-and extracellular pH to thrive in hypoxic conditions, and to increase tumor growth and metastasis. Efforts to target many of the transporters involved in cancer cell pH regulation have yielded promising results, however, many productive attempts to disrupt pH regulation appear to be non-specific to cancer cells, and more effective in some cancer cells than others. Following a review of the status of photodynamic cancer therapy, a novel light-activated process is presented which creates very focal, rapid, and significant decreases in only intracellular pH (pHi), leading to cell death. The light-activation of the H+ carrier, nitrobenzaldehyde, has been effective at initiating pH-induced apoptosis in non-cancerous and numerous cancerous cell lines in vitro, to include breast, prostate, and pancreatic cancers. Also, this intracellular acidification technique caused significant reductions in tumor growth rate and enhanced survival in mice bearing triple negative breast cancer tumors. The efficacy of an NBA-upconverting nanoparticle to kill breast cancer cells in vitro is described, as well as a discussion of the potential intracellular mechanisms underlying the pH-induced apoptosis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:癌细胞利用阵列质子转运蛋白来调节血尿病和细胞外pH培养缺氧条件,并增加肿瘤生长和转移。针对癌细胞pH调节中涉及的许多运输障碍的努力产生了有希望的结果,然而,许多损害pH调节的生产企图似乎是非特异性癌细胞,并且在某些癌细胞中比其他癌细胞更有效。在审查光动力癌疗法的状态下,提出了一种新的光活化过程,其产生非常焦点,快速,仅在细胞内pH(PHI)中的显着降低,导致细胞死亡。 H +载体,硝基苯醛的光活化在体外引发了在非癌症和许多癌细胞系中的pH诱导的凋亡,包括乳腺,前列腺和胰腺癌。此外,这种细胞内酸化技术导致肿瘤生长速率的显着降低,轴承三重阴性乳腺癌肿瘤的小鼠增强存活率。描述了NBA - 升级纳米粒子在体外杀死乳腺癌细胞的疗效,以及对pH诱导的细胞凋亡的潜在细胞内机制的讨论。 (c)2017 Elsevier Ltd.保留所有权利。

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